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用于体内检测次氯酸盐的线粒体靶向比率荧光探针的合成、分子对接计算、荧光及生物成像

Synthesis, molecular docking calculation, fluorescence and bioimaging of mitochondria-targeted ratiometric fluorescent probes for sensing hypochlorite in vivo.

作者信息

Huang Ling, Su Wanting, Zhao Yuping, Zhan Jingting, Lin Weiying

机构信息

Guangxi Key Laboratory of Electrochemical Energy Materials, Institute of Optical Materials and Chemical Biology, School of Chemistry and Chemical Engineering, Guangxi University, Nanning, Guangxi 530004, P. R. China.

出版信息

J Mater Chem B. 2021 Mar 21;9(11):2666-2673. doi: 10.1039/d0tb02735a. Epub 2021 Mar 2.

Abstract

Mitochondria are the main sites for the production of hypochlorite (OCl). The protein adenine nucleotide translocase (ANT) is located in the inner mitochondria membrane, which is mainly participated in the transportation of ions and metabolites. At the cellular organelle level, overexpression of ANT is associated with enhanced production of OCl, however, abnormal levels of OCl cause redox imbalance and loss of function of mitochondria. Herein, a novel mitochondria-targeted ratiometric fluorescent probe Mi-OCl-RP has been developed. Molecular docking calculation suggested a potential molecular target for the probe in the ANT, and the high binding energy (-8.58 kcal mol) may explain the high mitochondria selectivity of Mi-OCl-RP. The unique probe exhibits excellent spectral properties including ratiometric fluorescence response signals to OCl (within 7 s), high selectivity and sensitivity, and a large Stokes shift (278 nm). In addition, the colocalization coefficient confirms that Mi-OCl-RP can effectively target mitochondria. Furthermore, Mi-OCl-RP has low toxicity and good permeability, and was successfully employed in ratiometric imaging of OClin vivo, affording a robust molecular tool for investigating the biological functions of OCl in living systems.

摘要

线粒体是次氯酸盐(OCl)产生的主要场所。蛋白质腺嘌呤核苷酸转位酶(ANT)位于线粒体内膜,主要参与离子和代谢物的运输。在细胞器水平上,ANT的过表达与OCl产量增加有关,然而,OCl水平异常会导致氧化还原失衡和线粒体功能丧失。在此,开发了一种新型的线粒体靶向比率荧光探针Mi-OCl-RP。分子对接计算表明该探针在ANT中有一个潜在的分子靶点,高结合能(-8.58 kcal/mol)可能解释了Mi-OCl-RP的高线粒体选择性。这种独特的探针具有出色的光谱特性,包括对OCl的比率荧光响应信号(7秒内)、高选择性和灵敏度以及大斯托克斯位移(278 nm)。此外,共定位系数证实Mi-OCl-RP可以有效靶向线粒体。此外,Mi-OCl-RP具有低毒性和良好的渗透性,并成功用于OCl的体内比率成像,为研究OCl在生命系统中的生物学功能提供了一种强大的分子工具。

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